PhitOn_resonators
With phiton_resonatores, math and energy are the basis for restoring the timing of instruments, audio components, and room acoustics.
PhitOn_resonators
The PHITON_resonators objects were developed and are manufactured by Corrado Faccioni, Corfac2 SA, Lugano. As a sound engineer and developer of electrical, electronic and electroacoustic devices (since 1972), he has been involved in the transformation or positification of given electromagnetic interference components as early as the 1990s. The phiton_resonators are the dedicated application of a patented technology that fully reproduces the harmonic run-time behavior of oscillations.
PHITON_resonators are used, among other things, not only when building or optimizing existing musical instruments, but also to provide individual musicians, ensembles or orchestras with an undisturbed, better playing experience and interaction, regardless of the given space. Instruments, as well as their real spatial reproduction, are subject to the same physical principle of “everything vibrates”, and thus all possible disturbances in the running time behavior of the generated vibrations.
Appropriate accumulated experience allowed the development of specific PHITON_RESONTORS for audio applications, which entail an even higher correction of given mechanical and electromagnetic interference components.
To clarify, the phiton_resonators are not so-called information products, as they are often found on the market. The development and precise production of them follows a natural design and energy structure that enables a temporal order to be restored.
The use of dedicated PHITON_RESONATORS for the playback of music with an audio system suddenly results in an unexpected undisturbed synergy between the listener, the listening room and the audio components used, excluding previous delays of mechanical and electromagnetic origin.
To illustrate the efficiency of these components:
Even the simple removal of PHITON_RESONATORS used causes the achieved result to disintegrate immediately. Both the previously given real energy density and the correct synergistic behavior of all components involved are no longer available.
Users describe it the same way: the integration of PHITON_RESONATORS goes hand in hand with a complete presentation of the entire interplay without highlighting any unrealistic hi-fi aspects. Without this integration, all that remains is a system based on flat effects similar to “ping/pong”. If you want something like that, you don't need to read any more.
Confirmed by: Michele Nardelli | Federico II University of Naples
Die PhitOn_resonators are marked as follows in accordance with their construction size/geometry:
S, M, L, XL, XXL (with Euclidean design),
as well as:
L/ne (the non-Euclidean form used here improves, among other things, the function of the horizontal effect).
There is also a dedicated stand system with whose help/function you can use the high-quality PHITON_modules at any required height and thus achieve an even more advantageous creation of a space in the room and optimal illumination of it.
Frequently asked questions
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The metals used are stainless steel and copper, because according to Frithjof Müller's equation, the wavelength of the resonance for the copper electrons (Z = 29) is L = 29 · Ce · 231 = 151.1 mm. At the same time, the length of 151.1 mm is also a wavelength of resonance of protons from iron (Z = 26), where L = 26 · Cp · 242 = 151.1 mm.
Yes The approach of organizing harmonically dissonant and resonant components using phiton_resonators, whose dimensions are defined according to a basic mathematical model, makes it possible not only not to waste the energy associated with the dissonant component vibrations, but also to increase the degree of effectiveness of the oscillating object.
Both instruments and devices are subject to the same physical laws and are therefore equally susceptible to disharmonious influences. Since PHITON resonators are absolutely homogeneous, they can be used universally.
The efficiency of the phiton_resonators is such that blind tests are easily feasible.
Never, they have an effect on their own.